论文标题

在独立电影中通过分层辅助超快皱纹构造

Delamination-assisted ultrafast wrinkle formation in a freestanding film

论文作者

Su, Yifan, Zong, Alfred, Kogar, Anshul, Lu, Di, Hong, Seung Sae, Freelon, Byron, Rohwer, Timm, Hwang, Harold Y., Gedik, Nuh

论文摘要

综合和控制二维(2D)晶体的能力为研究物质及其新功能的新兴状态带来了许多机会。独立膜为材料工程提供了一个特别多的材料工程平台,这要归功于遵循平坦基板的膜中未发现的其他结构图案。一个无处不在的例子是皱纹,但由于缺乏实验探针无法在纳米镜尺度实时可视化其动力学,因此对它们如何能够像几次皮秒一样快的速度开发知识。在这里,我们使用Ultrafast Electron衍射直接观察独立的LA $ _ {2/3} $ CA $ _ {1/3} $ MNO $ _3 $ tilm中的光激活的皱纹形成。通过``锁定''分析在衍射峰位置,强度和宽度中的单个振荡模式的分析,我们能够定量地重建在Picsecond时尺度上的皱纹。与独立膜的固定边界条件的共同假设相反,我们发现皱纹的发育与膜边界和基础底物之间的接触点的超快分层有关,避免了膜中的应变堆积。我们的工作不仅提供了一个通用协议来量化独立膜中的皱纹动力学,而且还强调了薄膜 - 底层相互作用在确定独立式结构的特性方面的重要性。

The ability to synthesize and control two-dimensional (2D) crystals creates numerous opportunities for studying emergent states of matter and their novel functionalities. Freestanding films provide a particularly versatile platform for materials engineering in 2D thanks to additional structural motifs not found in films adhered to a flat substrate. A ubiquitous example is wrinkles, yet little is known about how they can develop over as fast as a few picoseconds due to a lack of experimental probes to visualize their dynamics in real time at the nanoscopic scale. Here, we use ultrafast electron diffraction to directly observe light-activated wrinkling formation in a freestanding La$_{2/3}$Ca$_{1/3}$MnO$_3$ film. Via a ``lock-in'' analysis of a single mode of oscillation in the diffraction peak position, intensity, and width, we are able to quantitatively reconstruct how wrinkles develop at the picosecond timescale. Contrary to the common assumption of a fixed boundary condition for freestanding films, we found that wrinkle development is associated with ultrafast delamination at the contact point between the film boundary and the underlying substrate, avoiding a strain build-up in the film. Not only does our work provide a generic protocol to quantify wrinkling dynamics in freestanding films, it also highlights the importance of film-substrate interaction for determining the properties of freestanding structures.

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